Biochar application in remediating salt-affected soil to achieve carbon neutrality and abate climate change
作者:Qiang Liu, Kudakwashe Meki, Hao Zheng, Yanfei Yuan, Mengying Shao, Xianxiang Luo, Xiaoyun Li, Zhixiang Jiang, Feng‐Min Li, Baoshan Xing · 发表于:Biochar · 年份:2023 · DOI:10.1007/s42773-023-00244-8 · 被引用次数:90 · 研究领域:Soil Carbon and Nitrogen Dynamics、Soil and Unsaturated Flow、Clay minerals and soil interactions
Abstract Salt-affected soils urgently need to be remediated to achieve the goals of carbon neutrality and food security. Limited reviews are available on biochar performance in remediating salt-affected soils in the context of carbon neutrality and climate change mitigation. This work summarized the two pathways to achieve carbon neutrality during remediating salt-affected soils using biochars, i.e., biochar production from sustainable feedstock using thermal technologies, application for promoting plant productivity and mitigating greenhouse gas (GHG) emission. Converting biomass wastes into biochars can reduce GHG emission and promote carbon dioxide removal (CDR), and collection of halophyte biomass as biochar feedstocks, development of biochar poly-generation production systems with carbon neutrality or negativity could be promising strategies. Biochar can effectively improve plant growth in salt-affected soils, showing that the grand mean of plant productivity response was 29.3%, via improving physicochemical characteristics, shifting microbial communities, and enhancing plant halotolerance. Moreover, biochar can mitigate GHG emission via inducing negative priming effect, improving soil properties, changing microbial communities associated with carbon and nitrogen cycle, direct adsorption of GHG. However, biochar also may pose negative effects on plant growth because of stress of toxic compounds and free radicals, and deterioration of soil properties. The promoted GHG emi...